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May 6, 20260 citations

Ultra-thick warm absorbers: Enlarging the parameter space of AGN ionised outflows

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RMR. MiddeiEPE. PiconcelliENE. Nardini

Key Points

  • The research aims to investigate ultra-thick warm absorbers in active galactic nuclei and their properties.
  • Performed spectral analyses using XMM-Newton, NuSTAR, and Swift datasets.
  • Studied variability of absorbers over timescales from days to years.
  • Analyzed a sample of 12 AGN for extreme soft X-ray variability.
  • Identified ultra-thick warm absorbers with high column densities and unique ionisation parameters.
  • Noted extreme soft X-ray variability, with changes up to an order of magnitude.
  • Found connections between UTWAs and ultra-fast outflows in some AGN.

Abstract

The analysis of X-ray absorption features in active galactic nuclei (AGN) provides a wealth of information about the physical properties of the matter surrounding supermassive black holes (SMBHs). While standard correlations between the ionisation state, column density, and velocity typically distinguish between disc winds and warm absorbers, some sources exhibit properties that significantly deviate from these trends. We investigate a class of X-ray absorbers, which we define as ultra-thick warm absorbers (UTWAs), identified in a sample of 12 AGN. These absorbers are characterised by exceptionally high column densities and ionisation parameters ( (łog (N_ ̊m H /̊m cm^ -2) ) łesssim 2. 5) ) that lie outside the typical ranges observed in standard warm absorbers. and 0. 5 łesssim łog (ξ/̊m erg cm s^ -1 We performed detailed X-ray spectral analyses of both unpublished and archival XMM-Newton, NuSTAR, and Swift datasets to characterise the physical properties of UTWAs in four of these twelve sources. We studied their variability on timescales ranging from days to years and explored their connection with other spectral features. All AGN hosting UTWAs in our sample exhibit extreme soft X-ray variability, in some cases up to an order of magnitude, primarily driven by changes in the absorbing gas. In a subset of these sources (four out of 12), the UTWAs are accompanied by signatures of ultra-fast outflows (UFOs) in the Fe Kα energy range. UTWAs represent a rare but crucial phase of AGN feedback. We discuss their physical origin, their potential connection with UFOs, and provide insights into why these high-column density, unusually ionised absorbers appear so rarely in local AGN samples.

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Cite This Study

Middei et al. (2026) studied this question.

synapsesocial.com/papers/69fa979b04f884e66b53187ehttps://doi.org/10.1051/0004-6361/202659321/pdf
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